Growth inhibition and tissue accumulation of palladium in the ubiquitous macrofungus Pleurotus ostreatus (oyster mushroom)

The growth effects and tissue accumulation of palladium (Pd) in the ubiquitous white-rot macrofungus Pleurotus ostreatus (oyster mushroom) are reported. Submerged cultures of P. ostreatus were exposed to Pd (as Na2PdCl4) at concentrations of 0, 6.25, 12.5, 25, 50 and 100 mg/L in potato dextrose broth media and incubated for 18 days at 25 °C. The growth response was measured as dried tissue biomass. Relative to controls, growth was partially inhibited at [Pd]broth = 25 and 50 mg/L. The minimum inhibitory concentration (MIC) of Pd was 100 mg Pd/L. Mean Pd concentrations of dry tissue (± standard error) ranged from 93.5 ± 17.1 mg Pd/kg to 1912.0 ± 293.9 mg Pd/kg, with bioconcentration factors (BCFs) ranging from 16.10 ± 4.17 to 40.91 ± 8.89. A linear positive log-log relationship was found between the Ctissue and [Pd]broth (R2 = 0.476), consistent with a Freundlich isotherm model of sorption. This relationship suggested that physicochemical processes may dominate tissue Pd accumulation in this system rather than biological processes.

© This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/

Files

Metadata

Work Title Growth inhibition and tissue accumulation of palladium in the ubiquitous macrofungus Pleurotus ostreatus (oyster mushroom)
Access
Open Access
Creators
  1. Deborah M. Aruguete
  2. Alaina Wyckoff
  3. Savanna David
  4. Shannon Steves
  5. Riley Crissman
  6. Lydia McCaleb
Keyword
  1. Platinum group elements
  2. white-rot fungi
  3. metal toxicity
  4. biosorption
License CC BY-NC-ND 4.0 (Attribution-NonCommercial-NoDerivatives)
Work Type Article
Publisher
  1. Chemosphere
Publication Date December 2023
Publisher Identifier (DOI)
  1. https://doi.org/10.1016/j.chemosphere.2023.140442
Deposited June 12, 2025

Versions

Analytics

Collections

This resource is currently not in any collection.

Work History

Version 1
published

  • Created
  • Added Revision_Aruguete_etal_ChemoShortComm_NOmarkup_BnW.pdf
  • Added Creator Deborah M. Aruguete
  • Added Creator Alaina Wyckoff
  • Added Creator Savanna David
  • Added Creator Shannon Steves
  • Added Creator Riley Crissman
  • Added Creator Lydia McCaleb
  • Published
  • Updated
  • Updated Keyword, Publication Date Show Changes
    Keyword
    • Platinum group elements, white-rot fungi , metal toxicity , biosorption
    Publication Date
    • 2023-12-01
    • 2023-12